Literature DB >> 16192345

Associations between breast cancer risk and the catalase genotype, fruit and vegetable consumption, and supplement use.

Jiyoung Ahn1, Marilie D Gammon, Regina M Santella, Mia M Gaudet, Julie A Britton, Susan L Teitelbaum, Mary Beth Terry, Susan Nowell, Warren Davis, Cutberto Garza, Alfred I Neugut, Christine B Ambrosone.   

Abstract

Observed weak or null associations between fruit and vegetable intake and breast cancer risk could be due to heterogeneity in endogenous antioxidant capabilities. The authors evaluated potential relations between a functional polymorphism in catalase, an antioxidant enzyme, and breast cancer risk, particularly in relation to fruit and vegetable intake and supplement use. Women (1,008 cases and 1,056 controls) in the Long Island Breast Cancer Study Project (1996-1997) were interviewed, completed a food frequency questionnaire, and provided blood for genotyping. The high-activity catalase CC genotype was associated with an overall 17% reduction in risk of breast cancer compared with having at least one variant T allele (odds ratio = 0.83, 95% confidence interval: 0.69, 1.00). Vegetable and, particularly, fruit consumption contributed to the decreased risk associated with the catalase CC genotype. Associations were more pronounced among women who did not use vitamin supplements, with a significant multiplicative interaction (p(interaction) = 0.02) for the CC genotype and high fruit intake (odds ratio = 0.59, 95% confidence interval: 0.38, 0.89), and there was no association among supplement users. These results indicate the importance of diet, rather than supplement use, in concert with endogenous antioxidant capabilities, in the reduction of breast cancer risk. CC genotypes were prevalent in approximately 64% of controls; thus, the preventive potential for fruit consumption has widespread implications.

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Year:  2005        PMID: 16192345     DOI: 10.1093/aje/kwi306

Source DB:  PubMed          Journal:  Am J Epidemiol        ISSN: 0002-9262            Impact factor:   4.897


  38 in total

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4.  Sequence variants in antioxidant defense and DNA repair genes, dietary antioxidants, and pancreatic cancer risk.

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6.  Genetic variation in multiple biologic pathways, flavonoid intake, and breast cancer.

Authors:  Nikhil K Khankari; Patrick T Bradshaw; Lauren E McCullough; Susan L Teitelbaum; Susan E Steck; Brian N Fink; Xinran Xu; Jiyoung Ahn; Christine B Ambrosone; Katherine D Crew; Mary Beth Terry; Alfred I Neugut; Jia Chen; Regina M Santella; Marilie D Gammon
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7.  Premenopausal plasma carotenoids, fluorescent oxidation products, and subsequent breast cancer risk in the nurses' health studies.

Authors:  Julia S Sisti; Sara Lindström; Peter Kraft; Rulla M Tamimi; Bernard A Rosner; Tianying Wu; Walter C Willett; A Heather Eliassen
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8.  Nutrients and nipple aspirate fluid composition: the breast microenvironment regulates protein expression and cancer aetiology.

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9.  Genetic Polymorphisms in Genes Related to Oxidative Stress (GSTP1, GSTM1, GSTT1, CAT, MnSOD, MPO, eNOS) and Survival of Rectal Cancer Patients after Radiotherapy.

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10.  Iron intake, oxidative stress-related genes (MnSOD and MPO) and prostate cancer risk in CARET cohort.

Authors:  Ji-Yeob Choi; Marian L Neuhouser; Matt J Barnett; Chi-Chen Hong; Alan R Kristal; Mark D Thornquist; Irena B King; Gary E Goodman; Christine B Ambrosone
Journal:  Carcinogenesis       Date:  2008-02-22       Impact factor: 4.944

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